Robotics Engineering focuses on the design, development, and optimization of robotic systems for diverse applications. It integrates mechanical structures, electronic components, and intelligent control algorithms to create functional and efficient robots. This field emphasizes kinematics, dynamics, actuator design, and advanced materials to improve robot performance. Through rigorous modeling and simulation, engineers enhance precision, speed, and reliability. Robotics engineering supports innovation in industrial automation, service robotics, and autonomous machines. By combining interdisciplinary principles, it enables the creation of sophisticated systems capable of performing complex tasks. As the field evolves, it continues to shape the future of technology-driven industries worldwide.
| 2-5 Days | Initial Quality & Plagiarism Check |
| 25-35 Days |
Peer Review Feedback |
| 45-60 Days | Total article processing time |
| English | Publication Language |
| Single-Blind | Peer-Review Model |
| 17% | Acceptance Rate |
| <18% | Similarity Screening Guideline |
| Open Access | Access Model |
All manuscripts undergo editorial assessment and originality screening as part of the journal's evaluation process. The acceptance rate shown is based on journal-level editorial data and may change over time. Similarity reports are assessed editorially and are not interpreted solely on the basis of a numerical similarity score.